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一种可溶解的微针贴片能够实现微创核黄素递送,并在圆锥角膜治疗中增强角膜交联。

A dissolving microneedle patch enables minimally invasive riboflavin delivery and enhances corneal crosslinking in keratoconus therapy.

作者信息

Ye Lin, Bei Zhongwu, Yang Tingyu, Xu Yang, Pan Meng, Deng Hanzhi, Li Xicheng, Liu Longqian, Qian Zhiyong

机构信息

Department of Biotherapy, Cancer Center and State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, 610041, China.

Department of Ophthalmology, West China Hospital, Sichuan University, Chengdu, 610041, China.

出版信息

J Mater Chem B. 2025 May 7;13(18):5343-5357. doi: 10.1039/d5tb00163c.

Abstract

Corneal collagen cross-linking (CXL) is an effective surgical approach to halt the progression of keratoconus. A key challenge lies in maintaining epithelial integrity while achieving sufficient stromal riboflavin (RF) concentration to ensure CXL efficacy. Additionally, the efficacy of CXL under RF-mediated cross-linking still has room for improvement. In this study, we developed a silk fibroin methacryloyl (SFMA)-based dissolvable microneedle (MN) system (termed RF/SFMA MNs). and experiments showed that RF/SFMA MNs exhibited excellent mechanical strength, dissolution profile, drug release profile and biocompatibility. , RF/SFMA MNs were characterized by suitable corneal penetration capability through a minimally invasive approach. MNs with different RF concentrations (0-2%) and tip lengths (330-800 µm) were tested. RF/SFMA MNs with a 1% RF concentration and a tip length of 550 µm achieved sufficient RF permeation and delivery depth within the corneal stroma. Furthermore, integrating SFMA into the CXL procedure allowed RF to mediate multiple crosslinking events between SFMA and collagen, resulting in an enhanced increase in corneal biomechanical strength compared to conventional Epi-on and Epi-off CXL strategies. Over a two-week observation period, MN-based CXL enhanced corneal biomechanics more effectively than Epi-off and Epi-on CXL, while maintaining collagen arrangement without adverse effects on the epithelium or endothelium. Therefore, RF/SFMA MNs, designed for minimally invasive RF delivery and enhanced CXL efficacy, present a promising and innovative approach to optimize CXL in the treatment of keratoconus.

摘要

角膜胶原交联(CXL)是一种阻止圆锥角膜进展的有效手术方法。一个关键挑战在于在维持上皮完整性的同时,实现足够的基质核黄素(RF)浓度以确保CXL疗效。此外,RF介导的交联作用下CXL的疗效仍有提升空间。在本研究中,我们开发了一种基于丝素蛋白甲基丙烯酰(SFMA)的可溶解微针(MN)系统(称为RF/SFMA MNs)。实验表明,RF/SFMA MNs表现出优异的机械强度、溶解特性、药物释放特性和生物相容性。此外,RF/SFMA MNs的特点是通过微创方法具有合适的角膜穿透能力。测试了具有不同RF浓度(0 - 2%)和针尖长度(330 - 800 µm)的微针。RF浓度为1%且针尖长度为550 µm的RF/SFMA MNs在角膜基质内实现了足够的RF渗透和递送深度。此外,将SFMA整合到CXL手术中使RF能够介导SFMA与胶原蛋白之间的多次交联事件,与传统的上皮在位和上皮脱失CXL策略相比,导致角膜生物力学强度增强。在为期两周的观察期内,基于微针的CXL比上皮脱失和上皮在位CXL更有效地增强了角膜生物力学,同时保持胶原蛋白排列,且对上皮或内皮无不良影响。因此,为微创RF递送和增强CXL疗效而设计的RF/SFMA MNs,为优化圆锥角膜治疗中的CXL提供了一种有前景的创新方法。

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